Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet

The aim of this paper is to present the unsteady magnetohydrodynamic (MHD) boundary layer flow and heat transfer of a fluid over a stretching sheet in the presence of viscous dissipation and heat source. Utilizing a similarity variable, the governing nonlinear partial differential equations are firs...

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Main Authors: Machireddy Gnaneswara Reddy, Polarapu Padma, Bandari Shankar
Format: Article
Language:English
Published: Elsevier 2015-12-01
Series:Ain Shams Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S209044791500060X
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spelling doaj-dc89c60c94ad49a09c7979dfddcd9e062021-06-02T09:31:20ZengElsevierAin Shams Engineering Journal2090-44792015-12-01641195120110.1016/j.asej.2015.04.006Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheetMachireddy Gnaneswara Reddy0Polarapu Padma1Bandari Shankar2Department of Mathematics, Acharya Nagarjuna University Campus, Ongole 523 001, IndiaDepartment of Mathematics, S. R. Govt. Arts & Science College, Kothagudem 507 101, IndiaDepartment of Mathematics, Osmania University, Hyderabad 500 007, IndiaThe aim of this paper is to present the unsteady magnetohydrodynamic (MHD) boundary layer flow and heat transfer of a fluid over a stretching sheet in the presence of viscous dissipation and heat source. Utilizing a similarity variable, the governing nonlinear partial differential equations are first transformed into ordinary differential equations before they are solved numerically by applying Keller Box method. Effects of physical parameters on the dimensionless velocity and temperature profiles were depicted graphically and analyzed in detail. The numerical predictions have been compared with already published papers and good agreement is obtained. Finally, numerical values of physical quantities such as the skin friction coefficient and the local Nusselt number are presented in tabular form. Heat transfer rate at the surface increases with increasing values of Prandtl number and unsteadiness parameter whereas it decreases with magnetic parameter, radiation parameter, Eckert number and heat source parameter.http://www.sciencedirect.com/science/article/pii/S209044791500060XUnsteady flowMagneto hydrodynamicsThermal radiationHeat transferStretching sheetViscous dissipation
collection DOAJ
language English
format Article
sources DOAJ
author Machireddy Gnaneswara Reddy
Polarapu Padma
Bandari Shankar
spellingShingle Machireddy Gnaneswara Reddy
Polarapu Padma
Bandari Shankar
Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
Ain Shams Engineering Journal
Unsteady flow
Magneto hydrodynamics
Thermal radiation
Heat transfer
Stretching sheet
Viscous dissipation
author_facet Machireddy Gnaneswara Reddy
Polarapu Padma
Bandari Shankar
author_sort Machireddy Gnaneswara Reddy
title Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
title_short Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
title_full Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
title_fullStr Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
title_full_unstemmed Effects of viscous dissipation and heat source on unsteady MHD flow over a stretching sheet
title_sort effects of viscous dissipation and heat source on unsteady mhd flow over a stretching sheet
publisher Elsevier
series Ain Shams Engineering Journal
issn 2090-4479
publishDate 2015-12-01
description The aim of this paper is to present the unsteady magnetohydrodynamic (MHD) boundary layer flow and heat transfer of a fluid over a stretching sheet in the presence of viscous dissipation and heat source. Utilizing a similarity variable, the governing nonlinear partial differential equations are first transformed into ordinary differential equations before they are solved numerically by applying Keller Box method. Effects of physical parameters on the dimensionless velocity and temperature profiles were depicted graphically and analyzed in detail. The numerical predictions have been compared with already published papers and good agreement is obtained. Finally, numerical values of physical quantities such as the skin friction coefficient and the local Nusselt number are presented in tabular form. Heat transfer rate at the surface increases with increasing values of Prandtl number and unsteadiness parameter whereas it decreases with magnetic parameter, radiation parameter, Eckert number and heat source parameter.
topic Unsteady flow
Magneto hydrodynamics
Thermal radiation
Heat transfer
Stretching sheet
Viscous dissipation
url http://www.sciencedirect.com/science/article/pii/S209044791500060X
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AT polarapupadma effectsofviscousdissipationandheatsourceonunsteadymhdflowoverastretchingsheet
AT bandarishankar effectsofviscousdissipationandheatsourceonunsteadymhdflowoverastretchingsheet
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